At one loop, plot each inverse squared coupling against . The three Standard Model lines have slopes that do not pass through one common point. Above the superpartner threshold, additional scalar and fermion vacuum-polarization diagrams change the slopes: for example, an gauge-boson two-point function receives a loop from a left-handed Standard Model fermion doublet and an additional loop from its scalar superpartner, while the gauge multiplet adds a gaugino loop alongside the gauge-boson and ghost loops. With the Minimal supersymmetric Standard Model field content, the three resulting straight lines meet to good accuracy. This is supersymmetric gauge coupling unification.
Let . Equality of and at the unification scale givessoSimilarly,whileEliminating yieldswithFor the GUT-normalized MSSM one-loop coefficients proportional to , this is .
Current coupling measurements approximately satisfy this MSSM relation and point to of order GeV, much more accurately than nonsupersymmetric one-loop running. Exact equality is not expected because two-loop evolution and threshold corrections from split superpartner and GUT-scale masses shift the lines; the absence so far of directly observed superpartners also prevents the threshold spectrum from being fixed experimentally.
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